The global methane budget 2000–2017 M Saunois, AR Stavert, B Poulter, P Bousquet, JG Canadell, RB Jackson, ... Earth System Science Data Discussions 2019, 1-136, 2019 | 1937 | 2019 |
Mitigation pathways compatible with 1.5 C in the context of sustainable development J Rogelj, D Shindell, K Jiang, S Fifita, P Forster, V Ginzburg, C Handa, ... Global warming of 1.5 C, 93-174, 2018 | 1805 | 2018 |
Simultaneously mitigating near-term climate change and improving human health and food security D Shindell, JCI Kuylenstierna, E Vignati, R van Dingenen, M Amann, ... Science 335 (6065), 183-189, 2012 | 1524 | 2012 |
The global methane budget: 2000–2012 M Saunois, P Bousquet, B Poulter, A Peregon, P Ciais, JG Canadell, ... Earth System Science Data Discussions 2016, 1-79, 2016 | 1130 | 2016 |
Cost-effective control of air quality and greenhouse gases in Europe: Modeling and policy applications M Amann, I Bertok, J Borken-Kleefeld, J Cofala, C Heyes, ... Environmental Modelling & Software 26 (12), 1489-1501, 2011 | 863 | 2011 |
The Global Methane Budget 2000–2017, Earth Syst. Sci. Data, 12, 1561–1623 M Saunois, AR Stavert, B Poulter, P Bousquet, JG Canadell, RB Jackson, ... | 339 | 2020 |
EU Reference Scenario 2016-Energy, transport and GHG emissions Trends to 2050. P Capros, A De Vita, N Tasios, P Siskos, M Kannavou, A Petropoulos, ... European Commission Directorate-General for Energy, Directorate-General for …, 2016 | 337 | 2016 |
Scenarios of global anthropogenic emissions of air pollutants and methane until 2030 J Cofala, M Amann, Z Klimont, K Kupiainen, L Höglund-Isaksson Atmospheric Environment 41 (38), 8486-8499, 2007 | 269 | 2007 |
The global methane budget 2000–2012, Earth Syst. Sci. Data, 8, 697–751 M Saunois, P Bousquet, B Poulter, A Peregon, P Ciais, JG Canadell, ... | 217 | 2016 |
Technical potentials and costs for reducing global anthropogenic methane emissions in the 2050 timeframe–results from the GAINS model L Höglund-Isaksson, A Gómez-Sanabria, Z Klimont, P Rafaj, W Schöpp Environmental Research Communications 2 (2), 025004, 2020 | 186 | 2020 |
Global anthropogenic methane emissions 2005–2030: technical mitigation potentials and costs L Höglund-Isaksson Atmospheric Chemistry and Physics 12 (19), 9079-9096, 2012 | 182 | 2012 |
The public health implications of the Paris Agreement: a modelling study I Hamilton, H Kennard, A McGushin, L Höglund-Isaksson, G Kiesewetter, ... The Lancet Planetary Health 5 (2), e74-e83, 2021 | 173 | 2021 |
Reducing global air pollution: the scope for further policy interventions M Amann, G Kiesewetter, W Schöpp, Z Klimont, W Winiwarter, J Cofala, ... Philosophical Transactions of the Royal Society A 378 (2183), 20190331, 2020 | 163 | 2020 |
EU energy, transport and GHG emissions: trends to 2050, reference scenario 2013 P Capros, A De Vita, N Tasios, D Papadopoulos, P Siskos, E Apostolaki, ... | 139 | 2013 |
Refunded emission payments theory, distribution of costs, and Swedish experience of NOx abatement T Sterner, LH Isaksson Ecological Economics 57 (1), 93-106, 2006 | 138 | 2006 |
Variability and quasi-decadal changes in the methane budget over the period 2000–2012 M Saunois, P Bousquet, B Poulter, A Peregon, P Ciais, JG Canadell, ... Atmospheric Chemistry and Physics 17 (18), 11135-11161, 2017 | 117 | 2017 |
Technical opportunities to reduce global anthropogenic emissions of nitrous oxide W Winiwarter, L Höglund-Isaksson, Z Klimont, W Schöpp, M Amann Environmental research letters 13 (1), 014011, 2018 | 112 | 2018 |
Global emissions of fluorinated greenhouse gases 2005–2050 with abatement potentials and costs P Purohit, L Höglund-Isaksson Atmospheric Chemistry and Physics 17 (4), 2795-2816, 2017 | 112 | 2017 |
Abatement costs in response to the Swedish charge on nitrogen oxide emissions LH Isaksson Journal of Environmental Economics and Management 50 (1), 102-120, 2005 | 89 | 2005 |
GAINS Asia. A tool to combat air pollution and climate change simultaneously. Methodology M Amann, I Bertok, J Borken-Kleefeld, A Chambers, J Cofala, F Dentener, ... | 86 | 2008 |